The mass-metallicity relation at z>3 down to M_*= 10^4 M_Sun. A local perspective using the metallicity distribution of RR Lyrae stars
arXiv:2503.04925 · doi:10.1051/0004-6361/202554043
Abstract
The mass-metallicity relation (MZR) is a fundamental scale law of galaxies. It is observed to evolve with redshift in unresolved galaxies up to z>6. However, observational constraints limits our view at such early epochs to galaxies with M_* >= 10^7 M_Sun. On the other hand, in the local Universe the MZR can be traced down to the faintest end of the galaxy luminosity function (M_*= 10^2 M_Sun) but we have access only to its present-day realization. We propose to use RR Lyrae stars to get the mean metallicity of local dwarf galaxies at the early epoch in which these variable stars were formed (z>~3), opening a new window on the evolution of the MZR across cosmic times down to the lowest mass. We use available data for a sample of Milky Way satellites to show that indeed the evolution of the MZR from the epoch of the formation of RR Lyrae to the present day can be traced with this approach, with results broadly compatible with those inferred from high z galaxies from nebular emission lines. The limitations of the approach as well as possible ways to refine the analysis are also briefly discussed.
4 pages (2 figures) + 1 page appendix (1 figure, 1 table). Accepted for publication in A&A Letters
References in corpus (19)
- The chemical enrichment in the early Universe as probed by JWST via direct metallicity measurements at z~8
- The Star Formation Histories of Local Group Dwarf Galaxies II. Searching For Signatures of Reionization
- Multi-Element Abundance Measurements from Medium-Resolution Spectra. IV. Alpha Element Distributions in Milky Way Dwarf Satellite Galaxies
- APOGEE Chemical Abundance Patterns of the Massive Milky Way Satellites
- The last breath of the Sagittarius dSph
- Variable stars in the newly discovered Milky Way satellite in Bootes
- The VMC survey - XXVI. Structure of the Small Magellanic Cloud from RR Lyrae stars
- A deep view into the nucleus of the Sagittarius Dwarf Spheroidal Galaxy with MUSE. I. Data and stellar population characterization
- The age of the Milky Way inner stellar spheroid from RR Lyrae population synthesis
- Stacking the Invisibles: A Guided Search for Low-Luminosity Milky Way Satellites
- Pulsating Variable Stars in the Coma Berenices dwarf spheroidal galaxy
- Constraints on the Distance Moduli, Helium and Metal Abundances, and Ages of Globular Clusters from their RR Lyrae and Non-Variable Horizontal-Branch Stars. I. M3, M15, and M92
- RR Lyrae From Binary Evolution: Abundant, Young and Metal-Rich
- The VMC Survey -- XLII. Near-infrared period-luminosity relations for RR Lyrae stars and the structure of the Large Magellanic Cloud
- The Sagittarius stream in Gaia eDR3 and the origin of the bifurcations
- The Extreme Low-mass End of the Mass-Metallicity Relation at
- Stellar mass, not dynamical mass nor gravitational potential, drives the mass-metallicity relationship
- A fresh look at the RR Lyrae population in the Draco dwarf spheroidal galaxy with Gaia
- Give to Ursa Minor what is Ursa Minor's: an updated census of the RR Lyrae population in the Ursa Minor dwarf galaxy based on Gaia DR3